DocumentCode :
726780
Title :
Predictive control strategy for DFIG wind turbines with maximum power point tracking using multilevel converters
Author :
Sayritupac, Jose ; Albanez, Eduardo ; Rengifo, Johnny ; Aller, Jose M. ; Restrepo, Jose
Author_Institution :
Univ. Simon Bolivar, Caracas, Venezuela
fYear :
2015
fDate :
2-4 June 2015
Firstpage :
1
Lastpage :
6
Abstract :
This paper proposes a control scheme for a wind turbine using a DFIG electromechanical converter, implemented through an NPC three-level back to back converter, that keeps a unitary power factor injection to the grid and maximizes the energy harvested from wind, using a maximum power point tracking algorithm (MPPT). A predictive direct power control (DPC) strategy drives the grid-side converter, to maintain the DC bus reference voltage. Whereas, a predictive direct torque control (DTC) strategy drives the machine-rotor-side converter, to control the power extraction, the power factor and balancing of the DC bus capacitors. The developed model allows to study the wind energy conversion system (WECS) for energy harvesting, rotor dynamics and power quality analysis. Simulation results endorse the effectiveness of the advanced control techniques for the whole wind spectrum, including the pitch angle control. A sensitivity analysis shows that the predictive DTC control strategy is robust with an uncertainty up to 20% of the induction machine parameters.
Keywords :
asynchronous generators; energy harvesting; maximum power point trackers; pitch control (position); power control; power factor; power supply quality; predictive control; rotors; sensitivity analysis; torque control; wind turbines; DC bus capacitor; DC bus reference voltage; DFIG electromechanical converter; DFIG wind turbine; DTC control strategy; MPPT; NPC three-level back to back converter; WECS; doubly fed induction generator; energy harvesting; grid-side converter; induction machine; machine-rotor-side converter; maximum power point tracking; multilevel converter; neutral point clamped; pitch angle control; power extraction; power factor; power quality analysis; predictive direct power control strategy; predictive direct torque control; rotor dynamics; sensitivity analysis; wind energy conversion system; Reactive power; Rotors; Stators; Torque; Voltage control; Wind speed; Wind turbines; DFIG; DPC; DTC; Predictive control; WECS;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics and Power Quality Applications (PEPQA), 2015 IEEE Workshop on
Conference_Location :
Bogota
Type :
conf
DOI :
10.1109/PEPQA.2015.7168207
Filename :
7168207
Link To Document :
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